Claire A Shaw, Maria Soltero-Rivera, Rodrigo Profeta, Bart C Weimer
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This deep sequencing approach revealed that increased diversity at both the genus and species levels marked the shift from AP to FCGS, including increases in <i>Porphyromonas</i> and <i>Treponema</i> species, and decreased <i>Streptobacillus</i> species. The metatranscriptomes were then probed for expression of antimicrobial resistance genes and virulence factors. Disease-related genes that include <i>cheY</i>, and <i>ompP5</i> were expressed in early AP and FCGS, while others like <i>galU</i> were only expressed in one or the other disease state. Both genus and species-level shifts were observed along the longitudinal microbiome samples with a noted increase in species diversity in the FCGS-associated microbiome. Corroborating that functional shifts accompany taxonomic changes, the AMR and virulence factor expression similarly changed between the sampling points. 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引用次数: 0
摘要
侵袭性牙周炎(AP)和猫慢性龈口炎(FCGS)是猫的两种病因不明的口腔炎症。这两种疾病都表现为严重的口腔炎症,而在 FCGS 中,非角质化粘膜会进一步恶化。口腔微生物群与疾病进展的关系越来越密切,但人们对 AP 和 FCGS 进展过程中微生物群落的变化知之甚少。为此,我们对一只首次被诊断为 AP 并发展为 FCGS 的猫的口腔微生物组的三个纵向样本进行了总 RNA 深度元基因组测序。这种深度测序方法发现,从 AP 到 FCGS 的转变标志着属和种水平的多样性增加,包括卟啉单胞菌和特雷波菌的增加以及链球菌的减少。然后对元转录组进行了抗菌药耐药性基因和毒力因子表达的检测。包括 cheY 和 ompP5 在内的疾病相关基因在早期 AP 和 FCGS 中均有表达,而 galU 等其他基因仅在一种或另一种疾病状态中表达。在纵向微生物组样本中观察到了属和种水平的变化,FCGS相关微生物组中的物种多样性显著增加。AMR和毒力因子的表达在采样点之间也发生了类似的变化,这证实了功能变化伴随着分类学的变化。这些分类学和功能的变化共同表明,AP 和 FCGS 有潜在的联系,并可能以口腔微生物组的变化为标志,这为开发基于微生物的临床诊断和治疗方法提供了支持。
Case Report: Shift from Aggressive Periodontitis to Feline Chronic Gingivostomatitis Is Linked to Increased Microbial Diversity.
Aggressive Periodontitis (AP) and Feline Chronic Gingivostomatitis (FCGS) are two oral inflammatory diseases in cats with unknown etiology. Both conditions present with severe inflammation of the oral cavity and in FCGS it is found with additional deterioration of the non-keratinized mucosa. The oral microbiome is increasingly implicated in disease progression, but little is known about shifts in the microbial community during the AP and FCGS progression. To that end, we used deep metagenomic sequencing with total RNA on three longitudinal samples of the oral microbiome in a cat first diagnosed with AP that progressed to FCGS. This deep sequencing approach revealed that increased diversity at both the genus and species levels marked the shift from AP to FCGS, including increases in Porphyromonas and Treponema species, and decreased Streptobacillus species. The metatranscriptomes were then probed for expression of antimicrobial resistance genes and virulence factors. Disease-related genes that include cheY, and ompP5 were expressed in early AP and FCGS, while others like galU were only expressed in one or the other disease state. Both genus and species-level shifts were observed along the longitudinal microbiome samples with a noted increase in species diversity in the FCGS-associated microbiome. Corroborating that functional shifts accompany taxonomic changes, the AMR and virulence factor expression similarly changed between the sampling points. Together, these taxonomic and functional shifts indicate that AP and FCGS are potentially linked and may be marked by changes in the oral microbiome, which supports the development of microbial-based clinical diagnostics and therapeutics.
期刊介绍:
Pathogens (ISSN 2076-0817) publishes reviews, regular research papers and short notes on all aspects of pathogens and pathogen-host interactions. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.